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  1. Examples. 1. Stability of the Objects. The objects present on the surface of the earth do not levitate or float in the air. This is because of the presence of the gravitational force present between the objects and the earth. The cup that is kept on the table does not hover in the air and stays in the same position until disrupted by an ...

    • Chitra Sharma
  2. Jun 17, 2023 · Some other Examples of Gravitational Force in Everyday Life. Apart from the above-mentioned ones, I am also mentioning of a few here. A piece of paper falling on the ground. Gases in stars. A child sliding in the park. A ball is thrown up always comes down. Stability of objects.

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  3. A gravitational field is used to explain gravitational phenomena, such as the gravitational force field exerted on another massive body. It has dimension of acceleration (L/T 2) and it is measured in units of newtons per kilogram (N/kg) or, equivalently, in meters per second squared (m/s 2). In its original concept, gravity was a force between ...

  4. The gravitational field is the gravitational force per unit mass that would be exerted on a small mass at that point. It is a vector field, and points in the direction of the force that the mass would feel. For a point particle of mass M, the magnitude of the resultant gravitational field strength g, at distance r from M, is.

  5. The gravitational potential energy equation. The gravitational potential is defined as”potential energy per unit test mass.” The gravitational potential V at a point is given by: From the above equation (3), it is clear that potential V (r) is independent of the value of the test mass m 0. Suggested Topics:

  6. Feb 3, 2023 · The gravitational force between the Sun and Earth can be calculated using equation (1). Mass of the Sun: M s = 2.0 x 10 30 kg. Mass of the Earth: M E = 6.0 x 10 24 kg. The average distance between the Sun and Earth, R SE = 1.5 x 10 11 m. Universal gravitational constant, G = 6.67 x 10 -11 Nm 2 /kg 2.

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  8. Sep 25, 2024 · gravity, in mechanics, the universal force of attraction acting between all bodies of matter. It is by far the weakest known force in nature and thus plays no role in determining the internal properties of everyday matter. On the other hand, through its long reach and universal action, it controls the trajectories of bodies in the solar system ...

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